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首页> 外文期刊>Environmental Technology >INFLUENCE OF THE AIRFLOW RATE ON HEAT AND MASS TRANSFERS DURING SEWAGE SLUDGE AND BULKING AGENT COMPOSTING
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INFLUENCE OF THE AIRFLOW RATE ON HEAT AND MASS TRANSFERS DURING SEWAGE SLUDGE AND BULKING AGENT COMPOSTING

机译:流量对污泥和膨胀剂组成过程中传热和传质的影响

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The aim of this study was to characterize the gas flow during the composting, at a pilot scale, of a mixture of sludge and bulking agent, in order to model heat and mass transfers involved in the process. Thus, a closed 300-litre cylindrical pilot was fed with a mixture of wastewater treatment sludge and pine bark. Aeration was supplied from the bottom via an air blower and gases were collected at the top. Three experiments were led with constant gas flow rates and one with varying aeration rate. Temperatures within the pilot reactor were monitored all along the trials and their evolutions were discussed in term of heat transfers and parameters influencing the heat balance. Concurrently, Retention Time Distribution curves were obtained by injecting a pulse of methane in the entering airflow and by analysing the methane concentration in the exhaust gas, every two or three days during composting. The gas flow, within the composting medium, was characterized by a dispersion model, which is a deviation of the plug flow model. The dispersive effect of the flow was correlated to the evolution of the experimental temperature, and a convective dispersion model was used to describe the heat and mass transfers through the gas flow. These equations will be, in future work, coupled with heat production and mass degradation terms in order to model the global mass and heat balances of this composting process. Finally, axial dispersion coefficients of gases were determined and correlated with the airflow rate.
机译:这项研究的目的是表征污泥和填充剂混合物在中试规模的堆肥过程中的气流,以模拟过程中涉及的热量和质量传递。因此,向封闭的300升圆柱状先导器中加入了废水处理污泥和松树皮的混合物。通过鼓风机从底部提供通气,在顶部收集气体。在恒定的气体流速下进行了三项实验,而在不同的曝气速率下进行了一项实验。在整个试验过程中,对中试反应堆内的温度进行监控,并根据传热和影响热平衡的参数讨论了它们的演变。同时,通过在堆肥过程中每两天或三天在进入的气流中注入甲烷脉冲并分析废气中的甲烷浓度来获得保留时间分布曲线。堆肥介质中的气流以弥散模型为特征,该模型是活塞流模型的偏差。气流的扩散效果与实验温度的变化相关,并且使用对流扩散模型描述了通过气流的传热和传质。在未来的工作中,这些方程式将与热量产生和质量降低项结合使用,以便为该堆肥过程的总体质量和热量平衡建模。最后,确定了气体的轴向弥散系数,并将其与气流速率相关联。

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